4.6 Article

Development of Sustainable Integrated Design Framework for Stream Restoration

期刊

SUSTAINABILITY
卷 11, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/su11030674

关键词

integrated watershed management; 11-step stream restoration procedure; pre-restoration design phase; restoration design phase; detailed design phase; hydrologic and hydraulic plan; geomorphic and sediment transport plan; ecological and environmental plan

资金

  1. Institute of Engineering Research at Seoul National University
  2. Department of Civil & Environmental Engineering at Seoul National University

向作者/读者索取更多资源

This study analyzed the elements of previously published stream restoration guidelines by clarifying the definition of stream restoration classified for various purposes. The purpose of this study was to establish a sustainable integrated design framework for stream restoration that supplemented the limited scope of application and the resulting problems. Stream restoration procedures were established using the method of securing water resources applied with the integrated watershed management in order to effectively and feasibly recover the modified stream, to resolve the water shortage problem, and to effectively restore the ecosystem due to climate change. An 11-step stream restoration procedure was established in three phases including the pre-restoration design phase, the restoration design phase, and the detailed design phase. Furthermore, the three stages were classified into hydrologic and hydraulic plan, geomorphic and sediment transport plan, and ecological and environmental plan depending on the direction of stream restoration, and the procedure for stream restoration was proposed to prevent river restoration from being biased toward a specific goal. An integrated design framework for stream restoration could be established by allowing the proposed stream restoration design procedures (e.g., three phases and three plans) and the elements to be carried out using numerical models for an effective design in establishing river restoration plans. Lastly, it was possible to quantify the problems of existing stream restoration by applying this stream restoration framework to the existing river restoration project and guideline report. As a result, the existing stream restoration project could be used as base data that could provide directions to supplement the weaknesses of the existing stream restoration project and provide directions for the new river restoration projects in the future.

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